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Preferential sorption versus preferential permeability in pervaporation

机译:渗透蒸发中的优先吸附与优先渗透率

摘要

Transport of liquids by pervaporation takes place by a solution—diffusion mechanism. In order to investigate the “solution part” of this transport model, preferential sorption has been compared with preferential permeability. Sorption equilibria and pervaporation experiments for the systems water—ethanol—cellulose acetate, water—ethanol—polyacrylonitrile and water—ethanol—polysulfone have been investigated. Theoretical values of preferential sorption have been derived from Flory—Huggins thermodynamics, extended with concentration dependent interaction parameters. These calculated sorption values show a reasonable agreement with experimental values. The large difference in molar volumes between water and ethanol determines the preferential sorption of water in these systems to a great extent, and this effect increases with decreasing swelling value. Comparison of preferential sorption experiments with pervaporation experiments indicates that, apart from the effect of differences in diffusivity for the permeating components, preferential sorption contributes to a major extent to selective transport.
机译:通过全蒸发进行的液体传输是通过溶液扩散机制进行的。为了研究此传输模型的“溶液部分”,将优先吸附与优先渗透率进行了比较。对水-乙醇-醋酸纤维素,水-乙醇-聚丙烯腈和水-乙醇-聚砜等体系的吸附平衡和全蒸发实验进行了研究。优先吸附的理论值已从Flory-Huggins热力学得出,并扩展了浓度依赖性的相互作用参数。这些计算的吸附值与实验值显示出合理的一致性。水和乙醇之间摩尔体积的巨大差异在很大程度上决定了水在这些系统中的优先吸附,并且随着溶胀值的降低,这种影响会增加。优先吸附实验与渗透蒸发实验的比较表明,除了渗透组分的扩散率差异的影响外,优先吸附在很大程度上有助于选择性转运。

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